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Metal Oxide-Supported Platinum Overlayers as Proton-Exchange Membrane Fuel Cell Cathodes

机译:金属氧化物支持的铂覆盖层作为质子交换膜燃料电池阴极

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摘要

We investigated the activity and stability of n=(1, 2, 3) platinum layers supported on a number of rutile metal oxides (MO2; M=Ti, Sn, Ta, Nb, Hf and Zr). A suitable oxide support can alleviate the problem of carbon corrosion and platinum dissolution in Pt/C catalysts. Moreover, it can increase the activity of platinum if the interaction between the support and the metal is optimal. We found that both the activity and the stability depend on the number of platinum layers and, as expected, both converge toward platinum bulk values if the number of layers is increased. With use of a simple volcano curve for activity estimation, we found that the supported platinum layers could be active for the oxygen reduction reaction, with a few candidates possibly having an activity even greater than that of platinum. Furthermore, we established a correlation between stability and activity for supported platinum monolayers, which suggests that activity can be increased at the expense of stability and vice versa. Finally, the performance of the systems was evaluated against Pt(111) skins on Pt3X (X=Ni, Co, Fe, Ti, Sc and Y) alloys, which are the best catalysts known to date for the reaction.
机译:我们研究了负载在许多金红石金属氧化物(MO2; M = Ti,Sn,Ta,Nb,Hf和Zr)上的n =(1、2、3)铂层的活性和稳定性。合适的氧化物载体可以减轻碳腐蚀和铂在Pt / C催化剂中溶解的问题。此外,如果载体和金属之间的相互作用最佳,则可以提高铂的活性。我们发现,活性和稳定性都取决于铂层的数量,并且,正如预期的那样,如果增加层数,则两者都趋向于铂体积值。通过使用简单的火山曲线进行活性估算,我们发现负载的铂层可能对氧还原反应具有活性,少数候选物的活性可能甚至大于铂。此外,我们在负载的铂单层的稳定性和活性之间建立了相关性,这表明可以通过牺牲稳定性来提高活性,反之亦然。最后,针对Pt3X(X = Ni,Co,Fe,Ti,Sc和Y)合金上的Pt(111)蒙皮评估了系统的性能,Pt3X合金是迄今为止已知的最佳反应催化剂。

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